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Fig. 3 in Short communication Somatochlora arctica (Odonata: Corduliidae) oviposing at a "lower than usual" altitude for Italy and the Mediterranean Region and first observation for the Varese Province (Northern Italy)
Fig. 3 - Lateral view of the male captured and released in July 2021. / Visione laterale del maschio catturato e rilasciato nel luglio 2021.
Fig. 1 in Short communication Somatochlora arctica (Odonata: Corduliidae) oviposing at a "lower than usual" altitude for Italy and the Mediterranean Region and first observation for the Varese Province (Northern Italy)
Fig. 1 - Lateral and frontal view of the female observed. / Visione laterale e frontale della femmina osservata.
Fig. 2 in New high altitude nesting site of White Stork (Ciconia ciconia Linnaeus, 1758) in Bulgaria
Fig. 2. The nest of White Stork (Ciconia ciconia) in Yundola village, 13.07.2016. (Photograph: G. Gruychev).
Fig. 1 in New high altitude nesting site of White Stork (Ciconia ciconia Linnaeus, 1758) in Bulgaria
Fig. 1. White Stork (Ciconia ciconia) at the nest in Yundola village in 16.07.2015 (Photograph: S. Stoyanov).
Plots of Observations of CasA from LOFAR Station IE613 HBA against Frequency, Altitude and Azimuth
<p>A series of plots of the variation of linear polarisation channels and Stokes parameters of an observation of CasA on the 16th-17th March 2018 against frequency and local horizontal coordinates.</p>
Sample single frequency plots of various channels against Altitude and Azimuth for LOFAR single station
<p>Sample of outputs indicating the variation in stokes and linear polarisation channels for LOFAR single station</p>
Fig 2 in Liquens foliícolas (Ascomycota) em Brejos de Altitude: novos registros para o Nordeste e para o Brasil
Fig 2. Número de espécies de liquens foliícolas por família registradas em Brejos de Altitude no Nordeste do Brasil
Figure 1 in Life history traits in Bufotes variabilis (Pallas, 1769) from 2 different altitudes in Turkey
Figure 1. Cross-sections at the diaphysis level of a phalanx of a male (A) and a female (B) of Bufotes variabilis individuals (m.c. = marrow cavity, e.b. = endosteal bone). The LAGs are indicated by black arrows.
Fig. 3 in Elaphostrongylus and Dictyocaulus infections in Norwegian wild reindeer and red deer populations in relation to summer pasture altitude and climate
Fig. 3. Calculated average altitude above sea level (points) with standard deviation (thicker grey line) of the main summer pasture area of six wild reindeer and two wild red deer populations in South Norway sampled for parasitological studies 2012–2014. The calculation was based upon GPS-positions recorded during June, July and August. The recorded min and max altitudes are indicated by the ends of the black line. Reindeer populations (No): 14 Nordfjella, 2 Snøhetta, 19 Setesdal Ryfylke, 1 Forollhogna, 6 Rondane, 20 Setesdal Austhei. Red deer populations (No): 24 Ørsta, 25 Kvinnherad.
Fig. 1 in Elaphostrongylus and Dictyocaulus infections in Norwegian wild reindeer and red deer populations in relation to summer pasture altitude and climate
Fig. 1. Map of South Norway showing the location of the 23 Norwegian wild tundra reindeer populations (No 1–23). The six populations included in the present study (No 1, 2, 6, 14, 19, 20) are marked with brighter tan. The location of two wild red deer municipalities studied (No 24, 25) are marked in green. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 5 in Elaphostrongylus and Dictyocaulus infections in Norwegian wild reindeer and red deer populations in relation to summer pasture altitude and climate
Fig. 5. Calculated mean temperature (̊C) and monthly rainfall (mm) for June–August at the average altitude of the main summer pasture areas for eight wild reindeer and red deer populations sampled for parasitological studies 2012–2014. The data represent the five summers prior to sampling. The range and average (horizontal bar) of mean monthly temperature (left y-axis) and rainfall (right y-axis) are shown by red and blue lines respectively. Reindeer populations (No): 14 Nordfjella, 2 Snøhetta, 19 Setesdal Ryfylke, 1 Forollhogna, 6 Rondane, 20 Setesdal Austhei. Red deer populations (No): 24 Ørsta, 25 Kvinnherad. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 2 in Elaphostrongylus and Dictyocaulus infections in Norwegian wild reindeer and red deer populations in relation to summer pasture altitude and climate
Fig. 2. Example of Kernel Density Analysis, visualizing the main grazing area of radio-collared females in the wild reindeer population in Nordfjella during June, July and August. The darker the color, the larger number of GPS positions recorded. The outer limits of the area are marked with a dark line. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Figure 6 in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 6. Accumulation curve of estimated (BootStrap1) and collected (Sobs) Odonata species in the Moinhos (Mills) area (A). Jardim Botânico (Botanical Garden) (B), and Morro do Ferro (Iron Hill) (C), with a confidence level of 95% (dotted lines). / Curva de acumulación de especies estimadas (BootStrap1) y recolectadas (Sobs) de Odonata en la zona de Moinhos (Molinos) (A), Jardim Botânico (JardÍn Botánico) (B) y Morro do Ferro (Colina de Hierro) (C), con un nivel de confianza del 95% (lÍneas punteadas).
Figure 4. Land use quantification around 1200 meters from a in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 4. Land use quantification around 1200 meters from a central point at the collection sites. JB: Jardim Botânico (Botanical Garden); MO: Moinhos (Mills); MF: Morro do Ferro (Iron Hill). / Cuantificación del uso del suelo alrededor de 1200 metros desde un punto central en los sitios de recolección. JB: Jardim Botânico (JardÍn Botánico); MO: Moinhos (Molinos); MF: Morro do Ferro (Colina de Hierro).
Figure 3 in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 3. Land uses in the surroundings (buffer) of 1200 meters from a central point of the three sampled sites. / Usos del suelo en los alrededores (buffer) de 1200 metros desde un punto central de
Figure 2 in Social wasps (Hymenoptera: Vespidae) associated with Eucalyptus sp. plantations from an Altitude Field in Southern Minas Gerais State, Brazil
Figure 2. Aerial view of the sampled region, exemplifying the replacement of native vegetation by the monoculture of Eucalyptus spp. / Vista aérea de la región muestreada, ejemplificando el reemplazo de la vegetación nativa por el monocultivo de Eucalyptus spp.
Figure 1 in Social wasps (Hymenoptera: Vespidae) associated with Eucalyptus sp. plantations from an Altitude Field in Southern Minas Gerais State, Brazil
Figure 1. Limits of the sampled area in Morro do Ferro, municipality of Poços de Caldas, Minas Gerais, Brazil. / LÍmites del área de muestreo en Morro do Ferro, municipio de Poços de Caldas, Minas Gerais, Brasil.
Figure 3 in The Alticini (Coleoptera: Chrysomelidae: Galerucinae) fauna of Davraz Mountain (Isparta): comments on host plant and altitude preferences with two new records for Turkish fauna
Figure 3. Distributions of the Alticini species numbers on Davraz Mountain with respect to different altitude ranges.
Figure 5 in The Alticini (Coleoptera: Chrysomelidae: Galerucinae) fauna of Davraz Mountain (Isparta): comments on host plant and altitude preferences with two new records for Turkish fauna
Figure 5. Longitarsus brunneus (Duftschmidt): a) aedeagus ventral view, b) aedeagus lateral view, c) spermatheca. Scale bar = 0.2 mm.
Figure 2 in The Alticini (Coleoptera: Chrysomelidae: Galerucinae) fauna of Davraz Mountain (Isparta): comments on host plant and altitude preferences with two new records for Turkish fauna
Figure 2. Percentages of flea beetle genera recorded from the study area in terms of species number.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.